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Purification and characterization of recombinant human interleukin 4. Biological activities receptor binding and the generation of monoclonal antibodies.

机译:重组人白介素的纯化和鉴定4.生物学活性受体结合和单克隆抗体的产生。

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摘要

A synthetic gene coding for human interleukin 4 (IL-4) was cloned and expressed in Saccharomyces cerevisiae (baker's yeast) as a C-terminal fusion protein with the yeast prepro alpha-mating factor sequence, resulting in secretion of mature IL-4 into the culture medium (0.6-0.8 micrograms/ml). A protocol was developed for purification of this protein. Crude cell-free conditioned medium was passed over a concanavalin A-Sepharose affinity column; bound proteins were eluted and further purified by S-Sepharose Fast Flow cation exchange and C18 reverse-phase h.p.l.c. Highly purified IL-4 was obtained by this method (0.3-0.4 mg per litre of culture) with a recovery of 51%. Thermospray liquid chromatography-mass spectrometry showed the C-terminal N-glycosylation site to be largely unmodified, and also showed that the N-terminus of the purified recombinant IL-4 (rIL-4) was authentic. Thiol titration revealed no free cysteine residues, implying that there are three disulphide groups, the positions of which remain to be determined. We have characterized the biological activities of the purified rIL-4. This material is active in B-cell co-stimulator assays, T-cell proliferation assays and in the induction of cell-surface expression of CD23 (the low-affinity receptor for IgE) on tonsillar B-cells. Half-maximal biological activity of the rIL-4 was achieved at a concentration of 120 pM. We have radioiodinated rIL-4 without loss of biological activity and performed equilibrium binding studies on Raji cells, a human B-cell line. The 125I-rIL-4 bound specifically to a single class of binding studies on Raji cells, a human B-cell line. The 125I-rIL-4 bound specifically to a single class of binding site with high affinity (Kd = 100 pM) and revealed 1100 receptors per cell. Receptor-ligand cross-linking studies demonstrated a single cell-surface receptor with an apparent molecular mass of 124 kDa. Two monoclonal antibodies have been raised to the human rIL-4, one of which blocks both the biological activity of rIL-4 and binding to its receptor.
机译:克隆了编码人白介素4(IL-4)的合成基因,并在酿酒酵母(面包酵母)中作为C端融合蛋白与酵母prepro alpha-mating因子序列一起表达,导致成熟IL-4分泌到培养基(0.6-0.8微克/毫升)。开发了用于纯化该蛋白质的方案。使无细胞粗条件培养液通过伴刀豆球蛋白A-Sepharose亲和柱;洗脱结合蛋白,并通过S-Sepharose Fast Flow阳离子交换和C18反相h.p.l.c进一步纯化。通过这种方法获得了高纯度的IL-4(每升培养液0.3-0.4 mg),回收率为51%。热喷雾液相色谱-质谱法显示C端N-糖基化位点很大程度上未修饰,并且还表明纯化的重组IL-4(rIL-4)的N端是真实的。硫醇滴定表明没有游离的半胱氨酸残基,这意味着存在三个二硫键基团,其位置尚待确定。我们已经表征了纯化的rIL-4的生物学活性。该物质在B细胞共刺激试验,T细胞增殖试验以及扁桃体B细胞诱导CD23(IgE的低亲和力受体)的细胞表面表达中具有活性。在120 pM的浓度下,rIL-4的生物学活性达到了一半。我们在不损失生物活性的情况下对碘化rIL-4进行了放射性碘标记,并对人类B细胞系Raji细胞进行了平衡结合研究。 125I-rIL-4特异性结合对人类B细胞系Raji细胞的一类结合研究。 125I-rIL-4以高亲和力(Kd = 100 pM)特异性结合到单类结合位点,每个细胞显示1100个受体。受体-配体的交联研究表明表观分子量为124 kDa的单细胞表面受体。已针对人rIL-4产生了两种单克隆抗体,其中一种既阻断rIL-4的生物学活性,又阻断其受体的结合。

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